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A smart node architecture for underwater monitoring of sensor networks

机译:用于传感器网络水下监控的智能节点架构

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摘要

This paper describes a wired addressing architecture of distributed sensors for monitoring real-time in situ pressure variations in underwater environment. Limits of isolated sensors and drawbacks of acoustic communication are overcome, and an application to the inspection of a submerged structure is made feasible. The prototype sensor is a Kapton (R)-based three-layered structure. We fabricated a 0.18 mu m CMOS mixed-mode System on Chip (SoC) as a prototype and a five-pad Chip on Board (COB) for unobtrusive monitoring. Testing sessions in aquatic environment have been carried on, and the dependence of the capacitance on pressure variation is shown when a linear pressure variation is exerted. An experimental result in a turbulent operating condition is reported too. (c) 2005 Elsevier B.V. All rights reserved.
机译:本文介绍了一种分布式传感器的有线寻址架构,用于监控水下环境中的实时原位压力变化。克服了隔离传感器的局限性和声学通信的弊端,使在水下结构检查中的应用成为可能。原型传感器是基于Kapton(R)的三层结构。我们制造了一个0.18微米的CMOS混合模式片上系统(SoC)作为原型,并制造了一个五焊盘的板上芯片(COB)以进行无干扰的监控。已经在水生环境中进行了测试,并显示了当施加线性压力变化时电容对压力变化的依赖性。也报道了在湍流工况下的实验结果。 (c)2005 Elsevier B.V.保留所有权利。

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